Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, WA 99164-7040, USA.
Animal Diseases Research Unit, United States Department of Agriculture, Agricultural Research Service, 3003 ADBF, Pullman, WA 99164-6630, USA.
Int J Mol Sci. 2022 Apr 1;23(7):3941. doi: 10.3390/ijms23073941.
spp. are obligate intracellular, tick-borne, bacterial pathogens that cause bovine and human anaplasmosis. We lack tools to prevent these diseases in part due to major knowledge gaps in our fundamental understanding of the tick-pathogen interface, including the requirement for and molecules involved in iron transport during tick colonization. We determine that iron is required for the pathogen , which causes bovine anaplasmosis, to replicate in tick cells. Using bioinformatics and protein modeling, we identified three orthologs of the Gram-negative siderophore-independent iron uptake system, FbpABC. Am069, the ortholog of FbpA, lacks predicted iron-binding residues according to the NCBI conserved domain database. However, according to protein modeling, the best structural orthologs of Am069 are iron transport proteins from Cyanobacteria and . We then determined that all three genes are modestly differentially expressed in response to altered host cell iron levels, despite the lack of a Ferric uptake regulator or operon structure. This work is foundational for building a mechanistic understanding of iron uptake, which could lead to interventions to prevent bovine and human anaplasmosis.
spp. 是专性细胞内寄生、蜱传、细菌性病原体,可引起牛和人类无形体病。由于我们对蜱-病原体界面的基本理解存在重大知识空白,包括蜱定植过程中铁运输的需求和涉及的分子,我们缺乏预防这些疾病的工具。我们确定病原体 需要铁才能在蜱细胞中复制。通过生物信息学和蛋白质建模,我们鉴定了三种革兰氏阴性菌非依赖铁摄取系统 FbpABC 的直系同源物。Am069 是 FbpA 的直系同源物,根据 NCBI 保守结构域数据库,它缺乏预测的铁结合残基。然而,根据蛋白质建模,Am069 的最佳结构直系同源物是来自蓝细菌和 的铁转运蛋白。然后我们确定,尽管缺乏 Ferric uptake regulator 或操纵子结构,但所有三个 基因在响应改变的宿主细胞铁水平时都有适度的差异表达。这项工作是构建铁摄取机制理解的基础,这可能导致预防牛和人类无形体病的干预措施。